Microbuckling of Fibrin Provides a Mechanism for Cell Mechanosensing

Autor: Notbohm, Jacob, Lesman, Ayelet, Rosakis, Phoebus, Tirrell, David A., Ravichandran, Guruswami
Rok vydání: 2014
Předmět:
Zdroj: Journal of The Royal Society Interface 12, no. 108 (2015): 20150320
Druh dokumentu: Working Paper
DOI: 10.1098/rsif.2015.0320
Popis: Biological cells sense and respond to mechanical forces, but how such a mechanosensing proccess takes place in a nonlinear inhomogeneous fibrous matrix remains unknown. We show that cells in a fibrous matrix induce deformation fields that propagate over a longer range than predicted by linear elasticity. Synthetic, linear elastic hydrogels used in many mechanotransduction studies fail to capture this effect. We develop a nonlinear microstructural finite element model for a fiber network to simulate localized deformations induced by cells. The model captures measured cell- induced matrix displacements from experiments and identifies an important mechanism for long range cell mechanosensing: loss of compression stiffness due to microbuckling of individual fibers. We show evidence that cells sense each other through the formation of localized intercellular bands of tensile deformations caused by this mechanism.
Comment: 11 pages, 6 figures. +14 pages supplementary material (+ 7 figures). Modified extensively after review
Databáze: arXiv